Literature DB >> 31063633

Tuning the "violin" of protein kinases: The role of dynamics-based allostery.

Lalima G Ahuja1, Susan S Taylor1,2, Alexandr P Kornev1.   

Abstract

The intricacies of allosteric regulation of protein kinases continue to engage the research community. Allostery, or control from a distance, is seen as a fundamental biomolecular mechanism for proteins. From the traditional methods of conformational selection and induced fit, the field has grown to include the role of protein motions in defining a dynamics-based allosteric approach. Harnessing of these continuous motions in the protein to exert allosteric effects can be defined by a "violin" model that focuses on distributions of protein vibrations as opposed to concerted pathways. According to this model, binding of an allosteric modifier causes global redistribution of dynamics in the protein kinase domain that leads to changes in its catalytic properties. This model is consistent with the "entropy-driven allostery" mechanism proposed by Cooper and Dryden in 1984 and does not require, but does not exclude, any major structural changes. We provide an overview of practical implementation of the violin model and how it stands amidst the other known models of protein allostery. Protein kinases have been described as the biomolecules of interest.
© 2019 IUBMB Life, 71(6):685-696, 2019. © 2019 International Union of Biochemistry and Molecular Biology.

Entities:  

Keywords:  MD simulation; community maps; conformation; entropy; protein allostery; protein dynamics; protein kinases

Mesh:

Substances:

Year:  2019        PMID: 31063633      PMCID: PMC6690483          DOI: 10.1002/iub.2057

Source DB:  PubMed          Journal:  IUBMB Life        ISSN: 1521-6543            Impact factor:   3.885


  80 in total

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